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Updated: May 4, 2026

Synthesis and Bioconjugation of Thiol-Reactive Reagents for the Creation of Site-Selectively Modified Immunoconjugates
Published on: March 6, 2019
Site-specific antibody drug conjugates for cancer therapy
Siler Panowski1, Sunil Bhakta1, Helga Raab1
1Genentech, Inc; South San Francisco, CA USA.
Abstract:
Antibody therapeutics have revolutionized the treatment of cancer over the past two decades. Antibodies that specifically bind tumor surface antigens can be effective therapeutics; however, many unmodified antibodies lack therapeutic activity. These antibodies can instead be applied successfully as guided missiles to deliver potent cytotoxic drugs in the form of antibody drug conjugates (ADCs). The success of ADCs is dependent on four factors--target antigen, antibody, linker, and payload. The field has made great progress in these areas, marked by the recent approval by the US Food and Drug Administration of two ADCs, brentuximab vedotin (Adcetris) and ado-trastuzumab emtansine (Kadcyla). However, the therapeutic window for many ADCs that are currently in pre-clinical or clinical development remains narrow and further improvements may be required to enhance the therapeutic potential of these ADCs. Production of ADCs is an area where improvement is needed because current methods yield heterogeneous mixtures that may include 0-8 drug species per antibody molecule. Site-specific conjugation has been recently shown to eliminate heterogeneity, improve conjugate stability, and increase the therapeutic window. Here, we review and describe various site-specific conjugation strategies that are currently used for the production of ADCs, including use of engineered cysteine residues, unnatural amino acids, and enzymatic conjugation through glycotransferases and transglutaminases. In addition, we also summarize differences among these methods and highlight critical considerations when building next-generation ADC therapeutics.
Insights
Antibody drug conjugates (ADCs) show promise for cancer treatment. Site-specific conjugation methods improve ADC stability and therapeutic potential by reducing heterogeneity in drug delivery.
Area of Science:
- Biotechnology
- Oncology
- Drug Development
Background:
- Antibody therapeutics are crucial in cancer treatment, but unmodified antibodies often lack efficacy.
- Antibody drug conjugates (ADCs) utilize antibodies as delivery vehicles for potent cytotoxic drugs.
- Recent FDA approvals highlight ADC progress, yet narrow therapeutic windows persist.
Purpose of the Study:
- To review and describe site-specific conjugation strategies for ADC production.
- To compare different site-specific conjugation methods and their impact on ADCs.
- To identify critical considerations for developing next-generation ADCs.
Main Methods:
- Review of existing literature on ADC production and conjugation techniques.
- Description of site-specific conjugation strategies including engineered cysteines, unnatural amino acids, and enzymatic methods.
- Analysis of heterogeneity, stability, and therapeutic window improvements associated with site-specific conjugation.
Main Results:
- Current ADC production methods result in heterogeneous mixtures, limiting therapeutic potential.
- Site-specific conjugation eliminates heterogeneity, enhancing conjugate stability and broadening the therapeutic window.
- Engineered cysteines, unnatural amino acids, glycotransferases, and transglutaminases are key site-specific conjugation approaches.
Conclusions:
- Site-specific conjugation is essential for overcoming limitations in current ADC production.
- Advancements in conjugation technologies are critical for improving ADC efficacy and safety.
- Further research into site-specific methods will drive the development of more effective next-generation ADCs.
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